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991.
An updated main coupler has been designed for the superconducting accelerator of Free Electron Laser (FEL) project under construction in Peking University. A capacitive structure is chosen for the main coupler. Numerical investigation using CST Microwave Studio demonstrates the cold window part. The other nonstandard structures such as holding rods and antenna are also optimized. The coupler uses a 95% purity Al2O3 ceramic cold window. The VSWR (Vottage Standing Wave Ratio) is 1.02 at 1.3 GHz and the frequency bandwidth is 45 MHz with VSWR<1.1. The electric field intensity is 8.5×10m-2 kV/mm around the window with 20 kW Continuous Wave (CW) transmitted power. The Qext is designed variable from 5×106 to 1×107. 相似文献
992.
An essential step in the development of microfluidic-biochips is represented by the assembly process. Among the thermal bonding processes used for the assembly of such devices the laser transmission welding of polymers offers several advantages, especially when it comes about local deposition of energy and minimum thermal distortion in the joining components.The research presented in this paper proposes a new approach for the laser transmission welding developed for the packaging of disposable polymeric microfluidic-biochips. The new approach based on the use of a fibre laser and a tailored method for the laser energy deposition was tested on the sealing of polymeric biochips made from plexiglas and polypropylene with a covering foil. This method combines the characteristics of the polymer contour welding and quasi-simultaneous welding and allows the achievement of contamination-free, high quality weld seams as narrow as 100 μm with a high dynamic making it suitable for the high volume production also. 相似文献
993.
O.V. Danylenko O.V. Dolgov M.L. Kulic V. Oudovenko 《The European Physical Journal B - Condensed Matter and Complex Systems》1999,9(2):201-206
By assuming that the superconducting pairing is due to the forward E-P scattering (FEP pairing) it is shown that the critical temperature of clean systems depends linearly on the E-P coupling constant and the isotope effect is very small. Impurities with the pronounced forward scattering (FS impurities) change analytical properties of the quasiparticle Green's function substantially compared to the case of the
isotropic scattering. The FS impurities are pair-breaking and affect in the same way s- and d-wave
FEP pairing making in the dirty limit.The usual isotropic impurity scattering is pair-weakening for s-wave and pair-breaking for the d-wave
FEP pairing.
Received 1st July 1998 相似文献
994.
北京谱仪(BESⅢ)超导磁体是为北京正负电子对撞机二期改造工程(BEPCⅡ)制造的超导探测器磁体.它采用了国际上先进的两相氮问接冷却方式及线圈内绕技术.其超导线为铝稳定体NbTi/Cu超导电缆.由于生产工艺上长度的限制,BESⅢ超导电缆由三段电缆焊接而成.焊接匝电阻必须限制在一定范围内,以免产生过大的焦耳热,影响磁体的正常运行.超导电缆由支撑筒内部引出到颈管及阀箱部分时,有一定角度的平弯及侧弯,这部分弯曲电缆的载流能力也是必须要考虑的问题.为此,我们进行了两次超导电缆性能测试实验,对超导电缆弯曲前后的载流能力进行了测试,并且测量了超导电缆低温下的焊接电阻.本文提供了这两次实验的实验结果及分析. 相似文献
995.
996.
通过在粉状乳化炸药中添加不同比例的密度调节剂,配制了爆速范围为1 450~2 550 m/s的低爆速炸药;采用该爆速炸药进行了铝/不锈钢复合管爆炸焊接实验,结合最小碰撞速度理论,对实验结果及其界面微观结构和结合强度进行了测试和分析,确定该复合管爆炸焊接的合适爆速约为1 950~2 150 m/s,其结合质量能够满足后续加工要求;同时发现界面由介于直线与波形之间的波状形态组成,且呈现不太规则的扁平波状结合,经分析,炸药爆速、复合管的爆炸焊接环境和爆炸产物飞散条件对界面结合波形及熔化层厚度有很大影响。 相似文献
997.
Resonant interaction scheme for GHZ state preparation and quantum phase gate with superconducting qubits in a cavity 下载免费PDF全文
A scheme is proposed to generate GHZ state and realize quantum phase gate for superconducting qubits placed in a microwave cavity. This scheme uses resonant interaction between the qubits and the cavity mode, so that the interaction time is short, which is important in view of decoherence. In particular, the phase gate can be realized simply with a single interaction between the qubits and the cavity mode. With cavity decay being considered, the fidelity and success probability are both very close to unity. 相似文献
998.
利用LS-DYNA对非晶薄带组爆炸复合冲击动态响应进行分析,获得层间碰撞速度、等效应力、等效应变等响应量。通过对涂层与无涂层的薄带组响应数值的对比,表明复合过程中等效应变主要集中在碰撞界面,且最下层应变最大,爆轰产物压力的持续使层间碰撞速度有较小幅度的提高;合理选用涂层材料有利于保护非晶薄带亚稳态结构及宏观完整性。最后在此分析基础上设计了制备实验,SEM和XRD测试表明所获得的样品复合质量良好。 相似文献
999.
1000.
The isovalent iron chalcogenides,FeSe_(0.5)Te_(0.5) and FeS,share similar lattice structures but behave very differently in superconducting properties.We study the underlying mechanism theoretically.By first principle calculations and tightbinding fitting,we find the spectral weight of the d_(X~2-Y~2) orbital changes remarkably in these compounds.While there are both electron and hole pockets in FeSe_(0.5)Te_(0.5) and Fe S,a small hole pocket with a mainly d_(X~2-Y~2) character is absent in FeS.We find the spectral weights of d_(X~2-Y~2) orbital change remarkably,which contribute to electron and hole pockets in FeSe_(0.5)Te_(0.5) but only to electron pockets in FeS.We then perform random-phase-approximation and unbiased singular-mode functional renormalization group calculations to investigate possible superconducting instabilities that may be triggered by electron-electron interactions on top of such bare band structures.For FeSe_(0.5)Te_(0.5) ,we find a fully gapped s~±-wave pairing that can be associated with spin fluctuations connecting electron and hole pockets.For Fe S,however,a nodal dxy(or d_(x~2-y~2) in an unfolded Broullin zone)is favorable and can be related to spin fluctuations connecting the electron pockets around the corner of the Brillouin zone.Apart from the difference in chacogenide elements,we propose the main source of the difference is from the d_(X~2-Y~2) orbital,which tunes the Fermi surface nesting vector and then influences the dominant pairing symmetry. 相似文献